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白血病融合基因 MLL/AF4 和 AML1/MTG8 通过控制端粒酶亚基 TERT 的表达来支持白血病自我更新。

Leukemic fusion genes MLL/AF4 and AML1/MTG8 support leukemic self-renewal by controlling expression of the telomerase subunit TERT.

机构信息

Northern Institute for Cancer Research, Newcastle University, Newcastle upon Tyne, UK.

出版信息

Leukemia. 2010 Oct;24(10):1751-9. doi: 10.1038/leu.2010.155. Epub 2010 Aug 5.

Abstract

MLL/AF4 and AML/MTG8 represent two leukemic fusion genes, which are most frequently found in infant acute lymphoblastic leukemia (ALL) and acute myeloid leukemia (AML), respectively. We examined the influence of MLL/AF4 and AML1/MTG8 fusion genes on the expression of TERT coding for the telomerase protein subunit, and subsequently telomerase activity in t(4;11)-positive ALL and t(8;21)-positive cell lines, respectively. MLL/AF4 suppression diminished telomerase activity and expression of TERT. Blocking pro-apoptotic caspase activation in conjunction with MLL/AF4 knockdown enhanced the inhibition of TERT gene expression, which suggests that MLL/AF4 depletion does not reduce TERT expression levels by inducing apoptosis. Knockdown of HOXA7, a direct transcriptional target of MLL/AF4 fusion gene, caused a reduction of telomerase and TERT to an extent similar to that observed with MLL/AF4 suppression. Chromatin immunoprecipitation of SEM cells, using ectopically expressed FLAG-tagged Hoxa7, indicates HOXA7 binding site in the TERT promoter region. Furthermore, suppression of the AML1/MTG8 fusion gene was associated with severely reduced clonogenicity, induction of replicative senescence, impaired TERT expression and accelerated telomere shortening. We thus present findings that show a mechanistic link between leukemic fusion proteins, essential for development and maintenance of leukemia, and telomerase, a key element of both normal and malignant self-renewal.

摘要

MLL/AF4 和 AML/MTG8 分别代表两种白血病融合基因,这两种基因最常出现在婴儿急性淋巴细胞白血病 (ALL) 和急性髓细胞白血病 (AML) 中。我们研究了 MLL/AF4 和 AML1/MTG8 融合基因对编码端粒酶蛋白亚单位的 TERT 编码基因的表达以及随后对 t(4;11)阳性 ALL 和 t(8;21)阳性细胞系中端粒酶活性的影响。MLL/AF4 抑制降低了端粒酶活性和 TERT 的表达。与 MLL/AF4 敲低相结合阻断促凋亡半胱天冬酶的激活增强了 TERT 基因表达的抑制作用,这表明 MLL/AF4 耗竭不是通过诱导细胞凋亡来降低 TERT 表达水平。直接靶向 MLL/AF4 融合基因的 HOXA7 的敲低导致端粒酶和 TERT 的减少程度与 MLL/AF4 抑制观察到的相似。使用外源性表达的 FLAG 标记的 Hoxa7 对 SEM 细胞进行染色质免疫沉淀表明,HOXA7 在 TERT 启动子区域结合位点。此外,AML1/MTG8 融合基因的抑制与克隆形成能力严重降低、复制性衰老诱导、TERT 表达受损和端粒缩短加速有关。因此,我们提出了这样的发现,即白血病融合蛋白与端粒酶之间存在一种机制联系,端粒酶是正常和恶性自我更新的关键因素。白血病融合蛋白对于白血病的发生和维持是必不可少的,而端粒酶则是正常和恶性自我更新的关键因素。

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